RA-L 20251 citations

Dynamics Decoupling and Control of a 3-DOF Force-Controlled End-Effector Based on Force Sensors

Licheng Zhang, Shuang Chen, Chin-Yin Chen, Yaohua Zhou, Junjie Dai, Guolong Zhang, Weijun Wang, Guilin Yang

Abstract

A 3-DOF force-controlled end-effector based on a parallel mechanism is an effective approach for high-precision polishing in industrial applications. However, the dynamic modeling of rigid-flexible coupling in parallel mechanisms, as well as the decoupled control of friction and coupling forces, remains a challenging task. This paper proposes a dynamic decoupling control method for a 3-DOF force-controlled end-effector. The method utilizes multiple force sensors to acquire joint forces in the end-effector's active joints. It compensates for internal coupling and frictional forces from components such as the branch links and slide rails, thus eliminating the need for a complex dynamic model. The proposed method is validated within a force-position hybrid control framework combined with a decoupling controller. Experimental results demonstrate the significant advantages of this method in terms of transient force response and steady-state force tracking. Moreover, the decoupling method using force sensors has been shown to improve positional accuracy. This approach enhances the end-effector's force control and positional accuracy without requiring a complex dynamic model.

BibTeX
@inproceedings{ral2025_dynamicsdecoupli,
  title = {Dynamics Decoupling and Control of a 3-DOF Force-Controlled End-Effector Based on Force Sensors},
  author = {Licheng Zhang and Shuang Chen and Chin-Yin Chen and Yaohua Zhou and Junjie Dai and Guolong Zhang and Weijun Wang and Guilin Yang},
  booktitle = {RA-L 2025},
  year = {2025}
}
Dynamics Decoupling and Control of a 3-DOF Force-Controlled End-Effector Based on Force Sensors · RA-L 2025